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High-resolution spectroscopy of the C–N stretching band of methylamine
- Source :
- The Journal of Chemical Physics. 135:104306
- Publication Year :
- 2011
- Publisher :
- AIP Publishing, 2011.
-
Abstract
- The C-N stretching infrared fundamental of CH(3)NH(2) has been investigated by high-resolution laser sideband and Fourier transform synchrotron spectroscopy to explore the energy level structure and to look for possible interactions with high-lying torsional levels of the ground state and other vibrational modes. The spectrum is complicated by two coupled large-amplitude motions in the molecule, the CH(3) torsion and the NH(2) inversion, which lead to rich spectral structure with a wide range of energy level splittings and relative line intensities. Numerous sub-bands have been assigned for K values ranging up to 12 for the stronger a inversion species for the v(t) = 0 torsional state, along with many of the weaker sub-bands of the s species. The C-N stretching sub-state origins have been determined by fitting the upper-state term values to J(J + 1) power-series expansions. For comparison with the ground-state behaviour, both ground and C-N stretch origins have been fitted to a phenomenological Fourier series model that produces an interesting pattern with the differing periodicities of the torsional and inversion energies. The amplitude of the torsional energy oscillation increases substantially for the C-N stretch, while the amplitude of the inversion energy oscillation is relatively unchanged. Independent inertial scale factors ρ were fitted for the torsion and the inversion and differ significantly in the upper state. The C-N stretching vibrational energy is determined to be 1044.817 cm(-1), while the effective upper state B-value is 0.7318 cm(-1). Several anharmonic resonances with v(t) = 4 ground-state levels have been observed and partially characterized. A variety of J-localized level-crossing resonances have also been seen, five of which display forbidden transitions arising from intensity borrowing that allow determination of the interaction coupling constants.
- Subjects :
- Chemistry
Lasers
Anharmonicity
Analytical chemistry
General Physics and Astronomy
Infrared spectroscopy
Carbon Dioxide
Molecular physics
Bond length
Methylamines
symbols.namesake
Amplitude
Fourier transform
Molecular vibration
Spectroscopy, Fourier Transform Infrared
symbols
Physical and Theoretical Chemistry
Ground state
Spectroscopy
Subjects
Details
- ISSN :
- 10897690 and 00219606
- Volume :
- 135
- Database :
- OpenAIRE
- Journal :
- The Journal of Chemical Physics
- Accession number :
- edsair.doi.dedup.....ca945e137ea64bf38e9a07eed25a2c50